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Enzymatic Grafting of Lactoferrin onto Silk Fibroins for Antibacterial Functionalization

机译:乳铁蛋白的酶接枝到丝素蛋白上以进行抗菌功能化

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摘要

Enzymatic oxidation of tyrosine side-chains in proteins could produce reactive o-quinones that might subsequently react with the primary amino groups of functional compounds, which provided a worthwhile reference for functionalization of fibrion materials. In the present work the potential for using tyrosinase to graft the bovine lactoferrin onto Bombyx mori silk fibroin was examined. Lactoferrin could adsorb onto silk fibers and covalently bind to the previous enzymatically oxidized fibroin surface. The enzyme-generated quinones in silk fibers also might cause self-crosslinking of fibroin peptides, which led to beneficial changes of silk properties. For the fabric treated with tyrosinase and lactoferrin slight improvements of dyeability and strength were obtained in comparison to the control. The combinedly treated fabric showed encouraging resistance to S. aureus and E. coli, the antibacterial activities reached to 87.0 % and 76.4 %, respectively. The durability of the antibacterial silk was noticeably higher than that of the sample treated with lactoferrin alone.
机译:蛋白质中酪氨酸侧链的酶促氧化可产生反应性邻醌,随后可能与功能性化合物的伯氨基反应,这为纤维蛋白材料的功能化提供了有价值的参考。在本工作中,研究了使用酪氨酸酶将牛乳铁蛋白嫁接到家蚕丝素蛋白上的潜力。乳铁蛋白可以吸附到丝纤维上并共价结合到先前的酶氧化丝蛋白表面。蚕丝纤维中由酶产生的醌类也可能引起纤维蛋白肽的自交联,从而导致蚕丝特性的有益变化。与对照相比,用酪氨酸酶和乳铁蛋白处理的织物在染色性和强度上有轻微的改善。组合处理的织物对金黄色葡萄球菌和大肠杆菌表现出令人鼓舞的抗性,其抗菌活性分别达到87.0%和76.4%。抗菌丝的耐久性显着高于单独用乳铁蛋白处理的样品。

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